Title :
Magnetic field effects on mitochondrion-activity-related optical properties in slime mold and bone forming cells
Author :
Mizukawa, Yuri ; Iwasaka, Masakazu
Author_Institution :
Grad. Sch. of Eng., Chiba Univ., Chiba, Japan
Abstract :
In the present study, a cellular level response of Cyto-aa3 oxidation was investigated in real time under both time-varying and strong static magnetic fields of 5 T. Two kinds of cells, a slime mold, Physarum polycephalum, and bone forming cells, MC-3T3-E1, were used for the experiments. The oxidation level of the Cyto-aa3 was calculated by optical absorptions at 690nm, 780nm and 830nm. The sample, fiber-optics and an additional optical fiber for light stimulation were set in a solenoidal coil or the bore of a 5-T superconducting magnet. The solenoidal coil for time-varying magnetic fields produced sinusoidal magnetic fields of 6mT. The slime mold showed a periodic change in Cyto-aa3 oxidation, and the oxidation-reduction cycle of Cyto-aa3 was apparently changed when visible-light irradiated the slime mold. Similarly to the case with light, time-varying magnetic stimulations changed the oxidation-reduction cycle during and after the stimulation for 10 minutes. The same phenomena were observed in the MC-3T3-E1 cell assembly, although their cycle rhythm was comparatively random. Finally, magnetic field exposure of up to 5T exhibited a distinct suppression of Cyto-aa3 oscillation in the bone forming cells. Exposure up to 5T was repeated five times, and the change in Cyto-aa3 oxidation reproducibly occurred.
Keywords :
bio-optics; biomagnetism; cellular effects of radiation; magnetic field effects; optical fibres; solenoids; superconducting magnets; Cyto-aa3 oscillation suppression; Cyto-aa3 oxidation-reduction cycle; MC-3T3-E1 cell assembly; Physarum polycephalum; bone forming cells; cellular level response; fiber optics; light stimulation optical fiber; magnetic field effects; magnetic field exposure; magnetic flux density 5 T; magnetic flux density 6 mT; mitochondrion activity related optical properties; optical absorption; oxidation level; sinusoidal magnetic fields; slime mold cells; solenoidal coil; strong static magnetic fields; superconducting magnet; time varying magnetic fields; time varying magnetic stimulations; visible light irradiation; wavelength 690 nm; wavelength 780 nm; wavelength 830 nm; Bones; Magnetic fields; Optical fibers; Oscillators; Oxidation; Stimulated emission;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location :
Osaka
DOI :
10.1109/EMBC.2013.6609782